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Move the probe naming to the creator of the device, and let each driver name its...
[libsigrok.git] / hardware / openbench-logic-sniffer / ols.c
CommitLineData
a1bb33af
UH
1/*
2 * This file is part of the sigrok project.
3 *
4 * Copyright (C) 2010 Bert Vermeulen <bert@biot.com>
5 *
6 * This program is free software: you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation, either version 3 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program. If not, see <http://www.gnu.org/licenses/>.
18 */
19
20#include <stdio.h>
21#include <stdint.h>
22#include <stdlib.h>
23#include <sys/types.h>
24#include <sys/stat.h>
25#include <fcntl.h>
26#include <unistd.h>
a9f54bcd
UH
27#ifdef _WIN32
28#include <windows.h>
29#else
a1bb33af 30#include <termios.h>
926b866c 31#endif
a1bb33af
UH
32#include <string.h>
33#include <sys/time.h>
34#include <inttypes.h>
926b866c
UH
35#ifdef _WIN32
36/* TODO */
37#else
6937bb75 38#include <arpa/inet.h>
926b866c 39#endif
a1bb33af 40#include <glib.h>
b7f09cf8
UH
41#include "sigrok.h"
42#include "sigrok-internal.h"
4fe9a6da 43#include "ols.h"
a1bb33af 44
1fdb75e1
UH
45#ifdef _WIN32
46#define O_NONBLOCK FIONBIO
47#endif
48
a1bb33af 49static int capabilities[] = {
5a2326a7
UH
50 SR_HWCAP_LOGIC_ANALYZER,
51 SR_HWCAP_SAMPLERATE,
52 SR_HWCAP_CAPTURE_RATIO,
53 SR_HWCAP_LIMIT_SAMPLES,
3a4d09c0 54 SR_HWCAP_RLE,
43fc7885 55 0,
a1bb33af
UH
56};
57
464d12c7
KS
58static const char* probe_names[NUM_PROBES + 1] = {
59 "0",
60 "1",
61 "2",
62 "3",
63 "4",
64 "5",
65 "6",
66 "7",
67 "8",
68 "9",
69 "10",
70 "11",
71 "12",
72 "13",
73 "14",
74 "15",
75 "16",
76 "17",
77 "18",
78 "19",
79 "20",
80 "21",
81 "22",
82 "23",
83 "24",
84 "25",
85 "26",
86 "27",
87 "28",
88 "29",
89 "30",
90 "31",
91 NULL,
92};
93
4fe9a6da 94/* default supported samplerates, can be overridden by device metadata */
60679b18 95static struct sr_samplerates samplerates = {
c9140419 96 SR_HZ(10),
59df0c77 97 SR_MHZ(200),
c9140419
UH
98 SR_HZ(1),
99 NULL,
a1bb33af
UH
100};
101
6c290072 102/* List of struct sr_serial_device_instance */
a1bb33af
UH
103static GSList *device_instances = NULL;
104
6937bb75 105static int send_shortcommand(int fd, uint8_t command)
a1bb33af
UH
106{
107 char buf[1];
108
b08024a8 109 sr_dbg("ols: sending cmd 0x%.2x", command);
a1bb33af 110 buf[0] = command;
2119ab03 111 if (serial_write(fd, buf, 1) != 1)
e46b8fb1 112 return SR_ERR;
a1bb33af 113
e46b8fb1 114 return SR_OK;
a1bb33af
UH
115}
116
6937bb75 117static int send_longcommand(int fd, uint8_t command, uint32_t data)
a1bb33af
UH
118{
119 char buf[5];
120
b08024a8 121 sr_dbg("ols: sending cmd 0x%.2x data 0x%.8x", command, data);
a1bb33af 122 buf[0] = command;
6937bb75
BV
123 buf[1] = (data & 0xff000000) >> 24;
124 buf[2] = (data & 0xff0000) >> 16;
125 buf[3] = (data & 0xff00) >> 8;
126 buf[4] = data & 0xff;
2119ab03 127 if (serial_write(fd, buf, 5) != 5)
e46b8fb1 128 return SR_ERR;
a1bb33af 129
e46b8fb1 130 return SR_OK;
a1bb33af
UH
131}
132
4fe9a6da 133static int configure_probes(struct ols_device *ols, GSList *probes)
a1bb33af 134{
1afe8989 135 struct sr_probe *probe;
a1bb33af 136 GSList *l;
6937bb75 137 int probe_bit, stage, i;
a1bb33af
UH
138 char *tc;
139
4fe9a6da 140 ols->probe_mask = 0;
43fc7885 141 for (i = 0; i < NUM_TRIGGER_STAGES; i++) {
4fe9a6da
BV
142 ols->trigger_mask[i] = 0;
143 ols->trigger_value[i] = 0;
a1bb33af
UH
144 }
145
4fe9a6da 146 ols->num_stages = 0;
43fc7885 147 for (l = probes; l; l = l->next) {
1afe8989 148 probe = (struct sr_probe *)l->data;
43fc7885 149 if (!probe->enabled)
6937bb75
BV
150 continue;
151
43fc7885
UH
152 /*
153 * Set up the probe mask for later configuration into the
154 * flag register.
155 */
a1bb33af 156 probe_bit = 1 << (probe->index - 1);
4fe9a6da 157 ols->probe_mask |= probe_bit;
6937bb75 158
a803c0db 159 if (!probe->trigger)
6937bb75
BV
160 continue;
161
43fc7885 162 /* Configure trigger mask and value. */
6937bb75 163 stage = 0;
43fc7885 164 for (tc = probe->trigger; tc && *tc; tc++) {
4fe9a6da 165 ols->trigger_mask[stage] |= probe_bit;
43fc7885 166 if (*tc == '1')
4fe9a6da 167 ols->trigger_value[stage] |= probe_bit;
6937bb75 168 stage++;
43fc7885
UH
169 if (stage > 3)
170 /*
171 * TODO: Only supporting parallel mode, with
172 * up to 4 stages.
173 */
e46b8fb1 174 return SR_ERR;
a1bb33af 175 }
4fe9a6da
BV
176 if (stage > ols->num_stages)
177 ols->num_stages = stage;
a1bb33af
UH
178 }
179
e46b8fb1 180 return SR_OK;
a1bb33af
UH
181}
182
a803c0db 183static uint32_t reverse16(uint32_t in)
6937bb75
BV
184{
185 uint32_t out;
186
a803c0db
BV
187 out = (in & 0xff) << 8;
188 out |= (in & 0xff00) >> 8;
189 out |= (in & 0xff0000) << 8;
190 out |= (in & 0xff000000) >> 8;
191
192 return out;
193}
194
195static uint32_t reverse32(uint32_t in)
196{
197 uint32_t out;
198
199 out = (in & 0xff) << 24;
200 out |= (in & 0xff00) << 8;
201 out |= (in & 0xff0000) >> 8;
202 out |= (in & 0xff000000) >> 24;
203
204 return out;
6937bb75
BV
205}
206
4fe9a6da
BV
207static struct ols_device *ols_device_new(void)
208{
209 struct ols_device *ols;
210
c0a4b971 211 /* TODO: Is 'ols' ever g_free()'d? */
b53738ba
UH
212 if (!(ols = g_try_malloc0(sizeof(struct ols_device)))) {
213 sr_err("ols: %s: ols malloc failed", __func__);
214 return NULL;
215 }
216
4fe9a6da
BV
217 ols->trigger_at = -1;
218 ols->probe_mask = 0xffffffff;
219 ols->cur_samplerate = SR_KHZ(200);
9c939c51 220 ols->period_ps = 5000000;
4fe9a6da
BV
221
222 return ols;
223}
224
225static struct sr_device_instance *get_metadata(int fd)
226{
227 struct sr_device_instance *sdi;
228 struct ols_device *ols;
229 uint32_t tmp_int;
230 uint8_t key, type, token;
231 GString *tmp_str, *devicename, *version;
232 gchar tmp_c;
233
234 sdi = sr_device_instance_new(0, SR_ST_INACTIVE, NULL, NULL, NULL);
235 ols = ols_device_new();
236 sdi->priv = ols;
237
238 devicename = g_string_new("");
239 version = g_string_new("");
240
241 key = 0xff;
242 while (key) {
243 if (serial_read(fd, &key, 1) != 1 || key == 0x00)
244 break;
245 type = key >> 5;
246 token = key & 0x1f;
247 switch (type) {
248 case 0:
249 /* NULL-terminated string */
250 tmp_str = g_string_new("");
251 while (serial_read(fd, &tmp_c, 1) == 1 && tmp_c != '\0')
252 g_string_append_c(tmp_str, tmp_c);
b08024a8
UH
253 sr_dbg("ols: got metadata key 0x%.2x value '%s'",
254 key, tmp_str->str);
4fe9a6da
BV
255 switch (token) {
256 case 0x01:
257 /* Device name */
258 devicename = g_string_append(devicename, tmp_str->str);
259 break;
260 case 0x02:
261 /* FPGA firmware version */
262 if (version->len)
263 g_string_append(version, ", ");
264 g_string_append(version, "FPGA version ");
265 g_string_append(version, tmp_str->str);
266 break;
267 case 0x03:
268 /* Ancillary version */
269 if (version->len)
270 g_string_append(version, ", ");
271 g_string_append(version, "Ancillary version ");
272 g_string_append(version, tmp_str->str);
273 break;
274 default:
b08024a8
UH
275 sr_info("ols: unknown token 0x%.2x: '%s'",
276 token, tmp_str->str);
4fe9a6da
BV
277 break;
278 }
279 g_string_free(tmp_str, TRUE);
280 break;
281 case 1:
282 /* 32-bit unsigned integer */
283 if (serial_read(fd, &tmp_int, 4) != 4)
284 break;
285 tmp_int = reverse32(tmp_int);
b08024a8
UH
286 sr_dbg("ols: got metadata key 0x%.2x value 0x%.8x",
287 key, tmp_int);
4fe9a6da
BV
288 switch (token) {
289 case 0x00:
290 /* Number of usable probes */
291 ols->num_probes = tmp_int;
292 break;
293 case 0x01:
294 /* Amount of sample memory available (bytes) */
295 ols->max_samples = tmp_int;
296 break;
297 case 0x02:
298 /* Amount of dynamic memory available (bytes) */
299 /* what is this for? */
300 break;
301 case 0x03:
302 /* Maximum sample rate (hz) */
303 ols->max_samplerate = tmp_int;
304 break;
305 case 0x04:
306 /* protocol version */
307 ols->protocol_version = tmp_int;
308 break;
309 default:
b08024a8
UH
310 sr_info("ols: unknown token 0x%.2x: 0x%.8x",
311 token, tmp_int);
4fe9a6da
BV
312 break;
313 }
314 break;
315 case 2:
316 /* 8-bit unsigned integer */
317 if (serial_read(fd, &tmp_c, 1) != 1)
318 break;
b08024a8
UH
319 sr_dbg("ols: got metadata key 0x%.2x value 0x%.2x",
320 key, tmp_c);
4fe9a6da
BV
321 switch (token) {
322 case 0x00:
323 /* Number of usable probes */
324 ols->num_probes = tmp_c;
325 break;
326 case 0x01:
327 /* protocol version */
328 ols->protocol_version = tmp_c;
329 break;
330 default:
b08024a8
UH
331 sr_info("ols: unknown token 0x%.2x: 0x%.2x",
332 token, tmp_c);
4fe9a6da
BV
333 break;
334 }
335 break;
336 default:
337 /* unknown type */
338 break;
339 }
340 }
341
342 sdi->model = devicename->str;
343 sdi->version = version->str;
344 g_string_free(devicename, FALSE);
345 g_string_free(version, FALSE);
346
347 return sdi;
348}
349
54ac5277 350static int hw_init(const char *deviceinfo)
a1bb33af 351{
a00ba012 352 struct sr_device_instance *sdi;
4fe9a6da 353 struct ols_device *ols;
a1bb33af 354 GSList *ports, *l;
4fe9a6da 355 GPollFD *fds, probefd;
6937bb75 356 int devcnt, final_devcnt, num_ports, fd, ret, i;
d02a535e 357 char buf[8], **device_names, **serial_params;
a1bb33af 358
c0a4b971
UH
359 final_devcnt = 0;
360
43fc7885 361 if (deviceinfo)
6937bb75 362 ports = g_slist_append(NULL, strdup(deviceinfo));
a1bb33af 363 else
43fc7885 364 /* No specific device given, so scan all serial ports. */
a1bb33af
UH
365 ports = list_serial_ports();
366
367 num_ports = g_slist_length(ports);
c0a4b971
UH
368
369 if (!(fds = g_try_malloc0(num_ports * sizeof(GPollFD)))) {
370 sr_err("ols: %s: fds malloc failed", __func__);
371 goto hw_init_free_ports; /* TODO: SR_ERR_MALLOC. */
372 }
373
374 if (!(device_names = g_try_malloc(num_ports * sizeof(char *)))) {
375 sr_err("ols: %s: device_names malloc failed", __func__);
376 goto hw_init_free_fds; /* TODO: SR_ERR_MALLOC. */
377 }
378
379 if (!(serial_params = g_try_malloc(num_ports * sizeof(char *)))) {
380 sr_err("ols: %s: serial_params malloc failed", __func__);
381 goto hw_init_free_device_names; /* TODO: SR_ERR_MALLOC. */
382 }
383
a1bb33af 384 devcnt = 0;
43fc7885
UH
385 for (l = ports; l; l = l->next) {
386 /* The discovery procedure is like this: first send the Reset
387 * command (0x00) 5 times, since the device could be anywhere
388 * in a 5-byte command. Then send the ID command (0x02).
389 * If the device responds with 4 bytes ("OLS1" or "SLA1"), we
390 * have a match.
391 *
392 * Since it may take the device a while to respond at 115Kb/s,
393 * we do all the sending first, then wait for all of them to
394 * respond with g_poll().
a1bb33af 395 */
b08024a8 396 sr_info("ols: probing %s...", (char *)l->data);
d02a535e 397 fd = serial_open(l->data, O_RDWR | O_NONBLOCK);
43fc7885 398 if (fd != -1) {
d02a535e
BV
399 serial_params[devcnt] = serial_backup_params(fd);
400 serial_set_params(fd, 115200, 8, 0, 1, 2);
e46b8fb1 401 ret = SR_OK;
43fc7885
UH
402 for (i = 0; i < 5; i++) {
403 if ((ret = send_shortcommand(fd,
e46b8fb1 404 CMD_RESET)) != SR_OK) {
43fc7885 405 /* Serial port is not writable. */
6937bb75
BV
406 break;
407 }
a1bb33af 408 }
e46b8fb1 409 if (ret != SR_OK) {
43fc7885
UH
410 serial_restore_params(fd,
411 serial_params[devcnt]);
d02a535e 412 serial_close(fd);
6937bb75 413 continue;
d02a535e 414 }
6937bb75
BV
415 send_shortcommand(fd, CMD_ID);
416 fds[devcnt].fd = fd;
417 fds[devcnt].events = G_IO_IN;
418 device_names[devcnt] = strdup(l->data);
419 devcnt++;
a1bb33af 420 }
6937bb75 421 free(l->data);
a1bb33af
UH
422 }
423
5b15b41e
PS
424 /* 2ms isn't enough for reliable transfer with pl2303, let's try 10 */
425 usleep(10000);
a1bb33af 426
a1bb33af 427 g_poll(fds, devcnt, 1);
4fe9a6da 428
43fc7885 429 for (i = 0; i < devcnt; i++) {
4fe9a6da
BV
430 if (fds[i].revents != G_IO_IN)
431 continue;
432 if (serial_read(fds[i].fd, buf, 4) != 4)
433 continue;
434 if (strncmp(buf, "1SLO", 4) && strncmp(buf, "1ALS", 4))
435 continue;
436
437 /* definitely using the OLS protocol, check if it supports
438 * the metadata command
439 */
440 send_shortcommand(fds[i].fd, CMD_METADATA);
441 probefd.fd = fds[i].fd;
442 probefd.events = G_IO_IN;
443 if (g_poll(&probefd, 1, 10) > 0) {
444 /* got metadata */
445 sdi = get_metadata(fds[i].fd);
446 sdi->index = final_devcnt;
447 } else {
448 /* not an OLS -- some other board that uses the sump protocol */
449 sdi = sr_device_instance_new(final_devcnt, SR_ST_INACTIVE,
450 "Sump", "Logic Analyzer", "v1.0");
451 ols = ols_device_new();
452 ols->num_probes = 32;
453 sdi->priv = ols;
a1bb33af 454 }
4fe9a6da
BV
455 sdi->serial = sr_serial_device_instance_new(device_names[i], -1);
456 device_instances = g_slist_append(device_instances, sdi);
457 final_devcnt++;
458 serial_close(fds[i].fd);
459 fds[i].fd = 0;
4fe9a6da
BV
460 }
461
462 /* clean up after all the probing */
463 for (i = 0; i < devcnt; i++) {
43fc7885 464 if (fds[i].fd != 0) {
d02a535e
BV
465 serial_restore_params(fds[i].fd, serial_params[i]);
466 serial_close(fds[i].fd);
6937bb75 467 }
d02a535e 468 free(serial_params[i]);
4fe9a6da 469 free(device_names[i]);
a1bb33af
UH
470 }
471
c0a4b971
UH
472 g_free(serial_params);
473hw_init_free_device_names:
474 g_free(device_names);
475hw_init_free_fds:
476 g_free(fds);
477hw_init_free_ports:
a1bb33af
UH
478 g_slist_free(ports);
479
480 return final_devcnt;
481}
482
a1bb33af
UH
483static int hw_opendev(int device_index)
484{
a00ba012 485 struct sr_device_instance *sdi;
a1bb33af 486
d32d961d 487 if (!(sdi = sr_get_device_instance(device_instances, device_index)))
e46b8fb1 488 return SR_ERR;
a1bb33af 489
d02a535e 490 sdi->serial->fd = serial_open(sdi->serial->port, O_RDWR);
43fc7885 491 if (sdi->serial->fd == -1)
e46b8fb1 492 return SR_ERR;
a1bb33af 493
5a2326a7 494 sdi->status = SR_ST_ACTIVE;
a1bb33af 495
e46b8fb1 496 return SR_OK;
a1bb33af
UH
497}
498
697785d1 499static int hw_closedev(int device_index)
a1bb33af 500{
a00ba012 501 struct sr_device_instance *sdi;
a1bb33af 502
697785d1
UH
503 if (!(sdi = sr_get_device_instance(device_instances, device_index))) {
504 sr_err("ols: %s: sdi was NULL", __func__);
505 return SR_ERR; /* TODO: SR_ERR_ARG? */
506 }
a1bb33af 507
697785d1 508 /* TODO */
43fc7885 509 if (sdi->serial->fd != -1) {
d02a535e 510 serial_close(sdi->serial->fd);
a1bb33af 511 sdi->serial->fd = -1;
5a2326a7 512 sdi->status = SR_ST_INACTIVE;
a1bb33af 513 }
697785d1
UH
514
515 return SR_OK;
a1bb33af
UH
516}
517
a1bb33af
UH
518static void hw_cleanup(void)
519{
520 GSList *l;
a00ba012 521 struct sr_device_instance *sdi;
a1bb33af 522
8722c31e 523 /* Properly close and free all devices. */
43fc7885 524 for (l = device_instances; l; l = l->next) {
a1bb33af 525 sdi = l->data;
43fc7885 526 if (sdi->serial->fd != -1)
d02a535e 527 serial_close(sdi->serial->fd);
a00ba012 528 sr_device_instance_free(sdi);
a1bb33af
UH
529 }
530 g_slist_free(device_instances);
531 device_instances = NULL;
a1bb33af
UH
532}
533
a1bb33af
UH
534static void *hw_get_device_info(int device_index, int device_info_id)
535{
a00ba012 536 struct sr_device_instance *sdi;
4fe9a6da 537 struct ols_device *ols;
a1bb33af
UH
538 void *info;
539
d32d961d 540 if (!(sdi = sr_get_device_instance(device_instances, device_index)))
a1bb33af 541 return NULL;
4fe9a6da 542 ols = sdi->priv;
a1bb33af
UH
543
544 info = NULL;
43fc7885 545 switch (device_info_id) {
5a2326a7 546 case SR_DI_INSTANCE:
a1bb33af
UH
547 info = sdi;
548 break;
5a2326a7 549 case SR_DI_NUM_PROBES:
a1bb33af
UH
550 info = GINT_TO_POINTER(NUM_PROBES);
551 break;
464d12c7
KS
552 case SR_DI_PROBE_NAMES:
553 info = probe_names;
554 break;
5a2326a7 555 case SR_DI_SAMPLERATES:
a1bb33af
UH
556 info = &samplerates;
557 break;
5a2326a7 558 case SR_DI_TRIGGER_TYPES:
43fc7885 559 info = (char *)TRIGGER_TYPES;
a1bb33af 560 break;
5a2326a7 561 case SR_DI_CUR_SAMPLERATE:
4fe9a6da 562 info = &ols->cur_samplerate;
a1bb33af
UH
563 break;
564 }
565
566 return info;
567}
568
a1bb33af
UH
569static int hw_get_status(int device_index)
570{
a00ba012 571 struct sr_device_instance *sdi;
a1bb33af 572
d32d961d 573 if (!(sdi = sr_get_device_instance(device_instances, device_index)))
5a2326a7 574 return SR_ST_NOT_FOUND;
a1bb33af
UH
575
576 return sdi->status;
577}
578
a1bb33af
UH
579static int *hw_get_capabilities(void)
580{
a1bb33af
UH
581 return capabilities;
582}
583
a00ba012 584static int set_configuration_samplerate(struct sr_device_instance *sdi,
43fc7885 585 uint64_t samplerate)
a1bb33af 586{
4fe9a6da 587 struct ols_device *ols;
a1bb33af 588
4fe9a6da
BV
589 ols = sdi->priv;
590 if (ols->max_samplerate) {
591 if (samplerate > ols->max_samplerate)
592 return SR_ERR_SAMPLERATE;
593 } else if (samplerate < samplerates.low || samplerate > samplerates.high)
e46b8fb1 594 return SR_ERR_SAMPLERATE;
a1bb33af 595
43fc7885 596 if (samplerate > CLOCK_RATE) {
4fe9a6da
BV
597 ols->flag_reg |= FLAG_DEMUX;
598 ols->cur_samplerate_divider = (CLOCK_RATE * 2 / samplerate) - 1;
43fc7885 599 } else {
4fe9a6da
BV
600 ols->flag_reg &= ~FLAG_DEMUX;
601 ols->cur_samplerate_divider = (CLOCK_RATE / samplerate) - 1;
a1bb33af 602 }
a1bb33af 603
7583b99d
GM
604 /* Calculate actual samplerate used and complain if it is different
605 * from the requested.
606 */
607 ols->cur_samplerate = CLOCK_RATE / (ols->cur_samplerate_divider + 1);
608 if(ols->flag_reg & FLAG_DEMUX)
609 ols->cur_samplerate *= 2;
610 ols->period_ps = 1000000000000 / ols->cur_samplerate;
611 if(ols->cur_samplerate != samplerate)
612 sr_warn("ols: can't match samplerate %" PRIu64 ", using %" PRIu64,
613 samplerate, ols->cur_samplerate);
614
e46b8fb1 615 return SR_OK;
a1bb33af
UH
616}
617
a1bb33af
UH
618static int hw_set_configuration(int device_index, int capability, void *value)
619{
a00ba012 620 struct sr_device_instance *sdi;
4fe9a6da 621 struct ols_device *ols;
a1bb33af
UH
622 int ret;
623 uint64_t *tmp_u64;
624
d32d961d 625 if (!(sdi = sr_get_device_instance(device_instances, device_index)))
e46b8fb1 626 return SR_ERR;
4fe9a6da 627 ols = sdi->priv;
a1bb33af 628
5a2326a7 629 if (sdi->status != SR_ST_ACTIVE)
e46b8fb1 630 return SR_ERR;
a1bb33af 631
a803c0db 632 switch (capability) {
5a2326a7 633 case SR_HWCAP_SAMPLERATE:
a1bb33af
UH
634 tmp_u64 = value;
635 ret = set_configuration_samplerate(sdi, *tmp_u64);
a803c0db 636 break;
5a2326a7 637 case SR_HWCAP_PROBECONFIG:
4fe9a6da 638 ret = configure_probes(ols, (GSList *) value);
a803c0db 639 break;
5a2326a7 640 case SR_HWCAP_LIMIT_SAMPLES:
2458ea65 641 tmp_u64 = value;
574ce498 642 if (*tmp_u64 < MIN_NUM_SAMPLES)
e46b8fb1 643 return SR_ERR;
baf1d714 644 if (*tmp_u64 > ols->max_samples)
22130421 645 sr_warn("ols: sample limit exceeds hw max");
4fe9a6da 646 ols->limit_samples = *tmp_u64;
b08024a8 647 sr_info("ols: sample limit %" PRIu64, ols->limit_samples);
e46b8fb1 648 ret = SR_OK;
a803c0db 649 break;
5a2326a7 650 case SR_HWCAP_CAPTURE_RATIO:
a803c0db 651 tmp_u64 = value;
4fe9a6da
BV
652 ols->capture_ratio = *tmp_u64;
653 if (ols->capture_ratio < 0 || ols->capture_ratio > 100) {
654 ols->capture_ratio = 0;
e46b8fb1 655 ret = SR_ERR;
43fc7885 656 } else
e46b8fb1 657 ret = SR_OK;
a803c0db 658 break;
3a4d09c0 659 case SR_HWCAP_RLE:
4d436e71 660 if (GPOINTER_TO_INT(value)) {
3a4d09c0
GM
661 sr_info("ols: enabling RLE");
662 ols->flag_reg |= FLAG_RLE;
663 }
664 ret = SR_OK;
665 break;
a803c0db 666 default:
e46b8fb1 667 ret = SR_ERR;
43fc7885 668 }
a1bb33af
UH
669
670 return ret;
671}
672
9c939c51 673static int receive_data(int fd, int revents, void *session_data)
a1bb33af 674{
b9c735a2 675 struct sr_datafeed_packet packet;
9c939c51 676 struct sr_datafeed_logic logic;
4fe9a6da
BV
677 struct sr_device_instance *sdi;
678 struct ols_device *ols;
679 GSList *l;
3a4d09c0
GM
680 int num_channels, offset, i, j;
681 unsigned char byte;
a1bb33af 682
4fe9a6da
BV
683 /* find this device's ols_device struct by its fd */
684 ols = NULL;
685 for (l = device_instances; l; l = l->next) {
686 sdi = l->data;
687 if (sdi->serial->fd == fd) {
688 ols = sdi->priv;
689 break;
690 }
691 }
692 if (!ols)
693 /* shouldn't happen */
694 return TRUE;
695
696 if (ols->num_transfers++ == 0) {
43fc7885
UH
697 /*
698 * First time round, means the device started sending data,
699 * and will not stop until done. If it stops sending for
700 * longer than it takes to send a byte, that means it's
701 * finished. We'll double that to 30ms to be sure...
a1bb33af 702 */
6f1be0a2 703 sr_source_remove(fd);
9c939c51 704 sr_source_add(fd, G_IO_IN, 30, receive_data, session_data);
c0a4b971
UH
705 ols->raw_sample_buf = g_try_malloc(ols->limit_samples * 4);
706 if (!ols->raw_sample_buf) {
707 sr_err("ols: %s: ols->raw_sample_buf malloc failed",
708 __func__);
709 return FALSE;
710 }
a803c0db 711 /* fill with 1010... for debugging */
4fe9a6da 712 memset(ols->raw_sample_buf, 0x82, ols->limit_samples * 4);
a1bb33af
UH
713 }
714
6937bb75 715 num_channels = 0;
43fc7885 716 for (i = 0x20; i > 0x02; i /= 2) {
4fe9a6da 717 if ((ols->flag_reg & i) == 0)
6937bb75 718 num_channels++;
43fc7885 719 }
6937bb75 720
3a4d09c0 721 if (revents == G_IO_IN) {
2119ab03 722 if (serial_read(fd, &byte, 1) != 1)
a1bb33af
UH
723 return FALSE;
724
baf1d714
UH
725 /* Ignore it if we've read enough. */
726 if (ols->num_samples >= ols->limit_samples)
727 return TRUE;
3a4d09c0 728
4fe9a6da 729 ols->sample[ols->num_bytes++] = byte;
b08024a8 730 sr_dbg("ols: received byte 0x%.2x", byte);
4fe9a6da 731 if (ols->num_bytes == num_channels) {
43fc7885 732 /* Got a full sample. */
b08024a8 733 sr_dbg("ols: received sample 0x%.*x",
baf1d714 734 ols->num_bytes * 2, *(int *)ols->sample);
4fe9a6da 735 if (ols->flag_reg & FLAG_RLE) {
43fc7885
UH
736 /*
737 * In RLE mode -1 should never come in as a
738 * sample, because bit 31 is the "count" flag.
43fc7885 739 */
3a4d09c0 740 if (ols->sample[ols->num_bytes - 1] & 0x80) {
baf1d714
UH
741 ols->sample[ols->num_bytes - 1] &= 0x7f;
742 /*
743 * FIXME: This will only work on
744 * little-endian systems.
a1bb33af 745 */
baf1d714 746 ols->rle_count = *(int *)(ols->sample);
3a4d09c0
GM
747 sr_dbg("ols: RLE count = %d", ols->rle_count);
748 ols->num_bytes = 0;
749 return TRUE;
baf1d714 750 }
3a4d09c0
GM
751 }
752 ols->num_samples += ols->rle_count + 1;
baf1d714
UH
753 if (ols->num_samples > ols->limit_samples) {
754 /* Save us from overrunning the buffer. */
3a4d09c0
GM
755 ols->rle_count -= ols->num_samples - ols->limit_samples;
756 ols->num_samples = ols->limit_samples;
a1bb33af
UH
757 }
758
43fc7885
UH
759 if (num_channels < 4) {
760 /*
761 * Some channel groups may have been turned
762 * off, to speed up transfer between the
763 * hardware and the PC. Expand that here before
764 * submitting it over the session bus --
765 * whatever is listening on the bus will be
766 * expecting a full 32-bit sample, based on
767 * the number of probes.
6937bb75
BV
768 */
769 j = 0;
4fe9a6da 770 memset(ols->tmp_sample, 0, 4);
43fc7885 771 for (i = 0; i < 4; i++) {
4fe9a6da 772 if (((ols->flag_reg >> 2) & (1 << i)) == 0) {
43fc7885
UH
773 /*
774 * This channel group was
775 * enabled, copy from received
776 * sample.
777 */
4fe9a6da 778 ols->tmp_sample[i] = ols->sample[j++];
6937bb75
BV
779 }
780 }
4fe9a6da 781 memcpy(ols->sample, ols->tmp_sample, 4);
baf1d714 782 sr_dbg("ols: full sample 0x%.8x", *(int *)ols->sample);
6937bb75
BV
783 }
784
a803c0db
BV
785 /* the OLS sends its sample buffer backwards.
786 * store it in reverse order here, so we can dump
787 * this on the session bus later.
788 */
3a4d09c0 789 offset = (ols->limit_samples - ols->num_samples) * 4;
baf1d714
UH
790 for (i = 0; i <= ols->rle_count; i++) {
791 memcpy(ols->raw_sample_buf + offset + (i * 4),
792 ols->sample, 4);
793 }
4fe9a6da
BV
794 memset(ols->sample, 0, 4);
795 ols->num_bytes = 0;
3a4d09c0 796 ols->rle_count = 0;
a1bb33af 797 }
43fc7885
UH
798 } else {
799 /*
800 * This is the main loop telling us a timeout was reached, or
801 * we've acquired all the samples we asked for -- we're done.
a803c0db 802 * Send the (properly-ordered) buffer to the frontend.
43fc7885 803 */
4fe9a6da 804 if (ols->trigger_at != -1) {
a803c0db
BV
805 /* a trigger was set up, so we need to tell the frontend
806 * about it.
807 */
4fe9a6da 808 if (ols->trigger_at > 0) {
a803c0db 809 /* there are pre-trigger samples, send those first */
5a2326a7 810 packet.type = SR_DF_LOGIC;
9c939c51
BV
811 packet.timeoffset = 0;
812 packet.duration = ols->trigger_at * ols->period_ps;
813 packet.payload = &logic;
814 logic.length = ols->trigger_at * 4;
815 logic.unitsize = 4;
baf1d714 816 logic.data = ols->raw_sample_buf +
22130421 817 (ols->limit_samples - ols->num_samples) * 4;
9c939c51 818 sr_session_bus(session_data, &packet);
a803c0db
BV
819 }
820
9c939c51 821 /* send the trigger */
5a2326a7 822 packet.type = SR_DF_TRIGGER;
9c939c51
BV
823 packet.timeoffset = ols->trigger_at * ols->period_ps;
824 packet.duration = 0;
825 sr_session_bus(session_data, &packet);
a803c0db 826
9c939c51 827 /* send post-trigger samples */
5a2326a7 828 packet.type = SR_DF_LOGIC;
9c939c51 829 packet.timeoffset = ols->trigger_at * ols->period_ps;
22130421 830 packet.duration = (ols->num_samples - ols->trigger_at) * ols->period_ps;
9c939c51 831 packet.payload = &logic;
22130421 832 logic.length = (ols->num_samples * 4) - (ols->trigger_at * 4);
9c939c51 833 logic.unitsize = 4;
22130421
GM
834 logic.data = ols->raw_sample_buf + ols->trigger_at * 4 +
835 (ols->limit_samples - ols->num_samples) * 4;
9c939c51 836 sr_session_bus(session_data, &packet);
a803c0db 837 } else {
9c939c51 838 /* no trigger was used */
5a2326a7 839 packet.type = SR_DF_LOGIC;
9c939c51 840 packet.timeoffset = 0;
22130421 841 packet.duration = ols->num_samples * ols->period_ps;
9c939c51 842 packet.payload = &logic;
22130421 843 logic.length = ols->num_samples * 4;
9c939c51 844 logic.unitsize = 4;
22130421
GM
845 logic.data = ols->raw_sample_buf +
846 (ols->limit_samples - ols->num_samples) * 4;
9c939c51 847 sr_session_bus(session_data, &packet);
a803c0db 848 }
c0a4b971 849 g_free(ols->raw_sample_buf);
a803c0db 850
06d64eb8 851 serial_flush(fd);
d02a535e 852 serial_close(fd);
5a2326a7 853 packet.type = SR_DF_END;
22130421 854 packet.timeoffset = ols->num_samples * ols->period_ps;
9c939c51
BV
855 packet.duration = 0;
856 sr_session_bus(session_data, &packet);
a1bb33af
UH
857 }
858
859 return TRUE;
860}
861
9c939c51 862static int hw_start_acquisition(int device_index, gpointer session_data)
a1bb33af 863{
b9c735a2
UH
864 struct sr_datafeed_packet *packet;
865 struct sr_datafeed_header *header;
a00ba012 866 struct sr_device_instance *sdi;
4fe9a6da 867 struct ols_device *ols;
a803c0db 868 uint32_t trigger_config[4];
a1bb33af 869 uint32_t data;
6937bb75
BV
870 uint16_t readcount, delaycount;
871 uint8_t changrp_mask;
22130421 872 int num_channels;
4fe9a6da 873 int i;
a1bb33af 874
d32d961d 875 if (!(sdi = sr_get_device_instance(device_instances, device_index)))
e46b8fb1 876 return SR_ERR;
c0a4b971 877
4fe9a6da 878 ols = sdi->priv;
a1bb33af 879
5a2326a7 880 if (sdi->status != SR_ST_ACTIVE)
e46b8fb1 881 return SR_ERR;
a1bb33af 882
22130421
GM
883 /*
884 * Enable/disable channel groups in the flag register according to the
baf1d714 885 * probe mask. Calculate this here, because num_channels is needed
22130421
GM
886 * to limit readcount.
887 */
888 changrp_mask = 0;
889 num_channels = 0;
890 for (i = 0; i < 4; i++) {
891 if (ols->probe_mask & (0xff << (i * 8))) {
892 changrp_mask |= (1 << i);
893 num_channels++;
894 }
895 }
896
baf1d714
UH
897 /*
898 * Limit readcount to prevent reading past the end of the hardware
22130421
GM
899 * buffer.
900 */
901 readcount = MIN(ols->max_samples / num_channels, ols->limit_samples) / 4;
a803c0db
BV
902
903 memset(trigger_config, 0, 16);
4fe9a6da
BV
904 trigger_config[ols->num_stages - 1] |= 0x08;
905 if (ols->trigger_mask[0]) {
906 delaycount = readcount * (1 - ols->capture_ratio / 100.0);
907 ols->trigger_at = (readcount - delaycount) * 4 - ols->num_stages;
a803c0db 908
43fc7885 909 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_MASK_0,
4fe9a6da 910 reverse32(ols->trigger_mask[0])) != SR_OK)
e46b8fb1 911 return SR_ERR;
a803c0db 912 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_VALUE_0,
4fe9a6da 913 reverse32(ols->trigger_value[0])) != SR_OK)
e46b8fb1 914 return SR_ERR;
a803c0db 915 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_CONFIG_0,
e46b8fb1
UH
916 trigger_config[0]) != SR_OK)
917 return SR_ERR;
6937bb75 918
a803c0db 919 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_MASK_1,
4fe9a6da 920 reverse32(ols->trigger_mask[1])) != SR_OK)
e46b8fb1 921 return SR_ERR;
43fc7885 922 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_VALUE_1,
4fe9a6da 923 reverse32(ols->trigger_value[1])) != SR_OK)
e46b8fb1 924 return SR_ERR;
a803c0db 925 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_CONFIG_1,
e46b8fb1
UH
926 trigger_config[1]) != SR_OK)
927 return SR_ERR;
6937bb75 928
a803c0db 929 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_MASK_2,
4fe9a6da 930 reverse32(ols->trigger_mask[2])) != SR_OK)
e46b8fb1 931 return SR_ERR;
a803c0db 932 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_VALUE_2,
4fe9a6da 933 reverse32(ols->trigger_value[2])) != SR_OK)
e46b8fb1 934 return SR_ERR;
43fc7885 935 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_CONFIG_2,
e46b8fb1
UH
936 trigger_config[2]) != SR_OK)
937 return SR_ERR;
a803c0db
BV
938
939 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_MASK_3,
4fe9a6da 940 reverse32(ols->trigger_mask[3])) != SR_OK)
e46b8fb1 941 return SR_ERR;
a803c0db 942 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_VALUE_3,
4fe9a6da 943 reverse32(ols->trigger_value[3])) != SR_OK)
e46b8fb1 944 return SR_ERR;
43fc7885 945 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_CONFIG_3,
e46b8fb1
UH
946 trigger_config[3]) != SR_OK)
947 return SR_ERR;
6937bb75 948 } else {
43fc7885 949 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_MASK_0,
4fe9a6da 950 ols->trigger_mask[0]) != SR_OK)
e46b8fb1 951 return SR_ERR;
43fc7885 952 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_VALUE_0,
4fe9a6da 953 ols->trigger_value[0]) != SR_OK)
e46b8fb1 954 return SR_ERR;
43fc7885 955 if (send_longcommand(sdi->serial->fd, CMD_SET_TRIGGER_CONFIG_0,
e46b8fb1
UH
956 0x00000008) != SR_OK)
957 return SR_ERR;
a803c0db 958 delaycount = readcount;
6937bb75 959 }
a1bb33af 960
b08024a8
UH
961 sr_info("ols: setting samplerate to %" PRIu64 " Hz (divider %u, "
962 "demux %s)", ols->cur_samplerate, ols->cur_samplerate_divider,
963 ols->flag_reg & FLAG_DEMUX ? "on" : "off");
4fe9a6da
BV
964 if (send_longcommand(sdi->serial->fd, CMD_SET_DIVIDER,
965 reverse32(ols->cur_samplerate_divider)) != SR_OK)
966 return SR_ERR;
a1bb33af 967
43fc7885 968 /* Send sample limit and pre/post-trigger capture ratio. */
a803c0db
BV
969 data = ((readcount - 1) & 0xffff) << 16;
970 data |= (delaycount - 1) & 0xffff;
e46b8fb1
UH
971 if (send_longcommand(sdi->serial->fd, CMD_CAPTURE_SIZE, reverse16(data)) != SR_OK)
972 return SR_ERR;
a1bb33af 973
43fc7885 974 /* The flag register wants them here, and 1 means "disable channel". */
4fe9a6da
BV
975 ols->flag_reg |= ~(changrp_mask << 2) & 0x3c;
976 ols->flag_reg |= FLAG_FILTER;
3a4d09c0
GM
977 ols->rle_count = 0;
978 data = (ols->flag_reg << 24) | ((ols->flag_reg << 8) & 0xff0000);
e46b8fb1
UH
979 if (send_longcommand(sdi->serial->fd, CMD_SET_FLAGS, data) != SR_OK)
980 return SR_ERR;
a1bb33af 981
43fc7885 982 /* Start acquisition on the device. */
e46b8fb1
UH
983 if (send_shortcommand(sdi->serial->fd, CMD_RUN) != SR_OK)
984 return SR_ERR;
a1bb33af 985
6f1be0a2 986 sr_source_add(sdi->serial->fd, G_IO_IN, -1, receive_data,
9c939c51 987 session_data);
a1bb33af 988
b53738ba
UH
989 if (!(packet = g_try_malloc(sizeof(struct sr_datafeed_packet)))) {
990 sr_err("ols: %s: packet malloc failed", __func__);
991 return SR_ERR_MALLOC;
992 }
993
994 if (!(header = g_try_malloc(sizeof(struct sr_datafeed_header)))) {
995 sr_err("ols: %s: header malloc failed", __func__);
c0a4b971 996 g_free(packet);
b53738ba
UH
997 return SR_ERR_MALLOC;
998 }
999
43fc7885 1000 /* Send header packet to the session bus. */
5a2326a7 1001 packet->type = SR_DF_HEADER;
43fc7885 1002 packet->payload = (unsigned char *)header;
a1bb33af
UH
1003 header->feed_version = 1;
1004 gettimeofday(&header->starttime, NULL);
4fe9a6da 1005 header->samplerate = ols->cur_samplerate;
c2616fb9
DR
1006 header->num_logic_probes = NUM_PROBES;
1007 header->num_analog_probes = 0;
9c939c51 1008 sr_session_bus(session_data, packet);
c0a4b971 1009
a1bb33af
UH
1010 g_free(header);
1011 g_free(packet);
1012
e46b8fb1 1013 return SR_OK;
a1bb33af
UH
1014}
1015
a1bb33af
UH
1016static void hw_stop_acquisition(int device_index, gpointer session_device_id)
1017{
b9c735a2 1018 struct sr_datafeed_packet packet;
a1bb33af 1019
17e1afcb 1020 /* Avoid compiler warnings. */
cb93f8a9 1021 (void)device_index;
afc8e4de 1022
5a2326a7 1023 packet.type = SR_DF_END;
8a2efef2 1024 sr_session_bus(session_device_id, &packet);
a1bb33af
UH
1025}
1026
5c2d46d1 1027struct sr_device_plugin ols_plugin_info = {
e519ba86
UH
1028 .name = "ols",
1029 .longname = "Openbench Logic Sniffer",
1030 .api_version = 1,
1031 .init = hw_init,
1032 .cleanup = hw_cleanup,
86f5e3d8
UH
1033 .opendev = hw_opendev,
1034 .closedev = hw_closedev,
e519ba86
UH
1035 .get_device_info = hw_get_device_info,
1036 .get_status = hw_get_status,
1037 .get_capabilities = hw_get_capabilities,
1038 .set_configuration = hw_set_configuration,
1039 .start_acquisition = hw_start_acquisition,
1040 .stop_acquisition = hw_stop_acquisition,
a1bb33af 1041};